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疟原虫 Puf2 表达的干扰和 Puf2 缺陷子孢子的 RNA-seq 分析显示其在维持 RNA 平衡和寄生虫传播能力方面的关键作用。

Perturbations of Plasmodium Puf2 expression and RNA-seq of Puf2-deficient sporozoites reveal a critical role in maintaining RNA homeostasis and parasite transmissibility.

机构信息

Seattle Biomedical Research Institute, Seattle, WA 98109, USA.

出版信息

Cell Microbiol. 2013 Jul;15(7):1266-83. doi: 10.1111/cmi.12116. Epub 2013 Feb 27.

Abstract

Malaria's cycle of infection requires parasite transmission between a mosquito vector and a mammalian host. We here demonstrate that the Plasmodium yoelii Pumilio-FBF family member Puf2 allows the sporozoite to remain infectious in the mosquito salivary glands while awaiting transmission. Puf2 mediates this solely through its RNA-binding domain (RBD) likely by stabilizing or hastening the degradation of specific mRNAs. Puf2 traffics to sporozoite cytosolic granules, which are negative for several markers of stress granules and P-bodies, and disappear rapidly after infection of hepatocytes. In contrast to previously described Plasmodium berghei pbpuf2(-) parasites, pypuf2(-) sporozoites have no apparent defect in host infection when tested early in salivary gland residence, but become progressively non-infectious and prematurely transform into EEFs during prolonged salivary gland residence. The premature overexpression of Puf2 in oocysts causes striking deregulation of sporozoite maturation and infectivity while extension of Puf2 expression in liverstages causes no defect, suggesting that the presence of Puf2 alone is not sufficient for its functions. Finally, by conducting the first comparative RNA-seq analysis of Plasmodium sporozoites, we find that Puf2 may play a role in directly or indirectly maintaining the homeostasis of specific transcripts. These findings uncover requirements for maintaining a window of opportunity for the malaria parasite to accommodate the unpredictable moment of transmission from mosquito to mammalian host.

摘要

疟原虫的感染周期需要寄生虫在蚊子媒介和哺乳动物宿主之间传播。我们在这里证明,疟原虫约氏家族成员 Puf2 允许子孢子在蚊子唾液腺中保持感染性,同时等待传播。Puf2 通过其 RNA 结合结构域(RBD)介导这一过程,可能通过稳定或加速特定 mRNA 的降解。Puf2 易位到子孢子细胞质颗粒中,这些颗粒对几种应激颗粒和 P 体标记物呈阴性,并且在感染肝细胞后迅速消失。与先前描述的疟原虫伯氏 pbpuf2(-)寄生虫相反,pypuf2(-)子孢子在早期唾液腺居留期间宿主感染时没有明显缺陷,但在延长的唾液腺居留期间,它们逐渐变得无感染性,并过早转化为 EEFs。在卵囊中过早过表达 Puf2 会导致子孢子成熟和感染性的明显失调,而在肝期延长 Puf2 的表达则不会导致缺陷,这表明 Puf2 的存在本身不足以发挥其功能。最后,通过对疟原虫子孢子进行首次比较 RNA-seq 分析,我们发现 Puf2 可能在直接或间接维持特定转录本的动态平衡方面发挥作用。这些发现揭示了维持疟原虫适应从蚊子到哺乳动物宿主的不可预测传播时刻的机会窗口的要求。

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